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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >An Experimental Validation of Heat Release Rate Fluctuation Measurements in Technically Premixed Flames
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An Experimental Validation of Heat Release Rate Fluctuation Measurements in Technically Premixed Flames

机译:技术预混火焰中放热率波动测量的实验验证

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摘要

Understanding the effects of inlet velocity and inlet equivalence ratio fluctuations on heat release rate fluctuations in lean premixed gas turbine combustors is essential for predicting combustor instability characteristics. This information is typically obtained from independent velocity-forced and fuel-forced flame transfer function measurements, where the global chemiluminescence intensity is used as a measure of the flame's overall rate of heat release. Current lean premixed combustors operate in a technically premixed mode where the flame is exposed to both velocity and equivalence ratio fluctuations and, as a result, the chemiluminescence intensity does not provide an accurate measure of the flame's rate of heat release. The objective of this work is to experimentally assess the validity of a technique for measuring heat release rate fluctuations in technically premixed flames based on the linear superposition of fuel-forced and velocity-forced flame transfer function measurements. In the absence of a technique for directly measuring heat release rate fluctuations in technically premixed flames, the heat release rate reconstruction is validated indirectly by comparing measured and reconstructed chemiluminescence intensity fluctuations. The results are reported for a range of operating conditions and forcing frequencies which demonstrate the capabilities and limitations of the heat release rate reconstruction technique. A variation of this technique, referred to as a reverse reconstruction, is also proposed, which does not require a measurement of the fuel-forced flame transfer function. The results obtained using the reverse reconstruction technique are presented and compared to the results from the direct reconstruction technique.
机译:了解进气速度和进气当量比波动对稀薄预混燃气轮机燃烧器放热速率波动的影响,对于预测燃烧器的不稳定性特性至关重要。该信息通常是从独立的速度强迫和燃料强迫火焰传递函数测量中获得的,其中将整体化学发光强度用作火焰总放热率的度量。当前的稀薄预混燃烧器以技术上预混的模式运行,在这种模式下,火焰暴露于速度和当量比的波动中,因此,化学发光强度不能准确地测量火焰的放热速率。这项工作的目的是根据燃料强制和速度强制火焰传递函数测量值的线性叠加,通过实验评估一种用于测量技术预混火焰中放热速率波动的技术的有效性。在没有直接测量技术预混火焰中放热速率波动的技术的情况下,通过比较测得的和重建的化学发光强度波动来间接验证放热速率的重建。报告了一系列工作条件和强制频率的结果,这些结果证明了放热速率重建技术的功能和局限性。还提出了该技术的一种变型,称为反向重构,该变型不需要测量燃料强制的火焰传递函数。介绍了使用逆向重建技术获得的结果,并将其与直接重建技术的结果进行了比较。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2013年第12期|121505.1-121505.7|共7页
  • 作者单位

    Center for Advanced Power Generation,The Pennsylvania State University,University Park, PA 16802;

    Center for Advanced Power Generation,The Pennsylvania State University,University Park, PA 16802;

    Center for Advanced Power Generation,The Pennsylvania State University,University Park, PA 16802;

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  • 正文语种 eng
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